Abstract:
This paper presents a CCM analysis of a new modification of a three-level single phase neutral-point-clamped inverter. The proposed topology combines advantages of the th...Show MoreMetadata
Abstract:
This paper presents a CCM analysis of a new modification of a three-level single phase neutral-point-clamped inverter. The proposed topology combines advantages of the three-level neutral-point-clamped full-bridge inverter with those of the quasi-Z-source inverter. The three-level neutral-point-clamped quasi-Z-source inverter is especially suitable for renewable energy sources. The steady-state analysis of a three-level neutral-point-clamped quasi-Z-source inverter in the case of the continuous conduction mode is presented. The conditions of the continuous conduction mode are obtained and analyzed.
Date of Conference: 04-06 September 2012
Date Added to IEEE Xplore: 21 January 2013
ISBN Information:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Inverters ,
- Capacitors ,
- Topology ,
- Switches ,
- Equations ,
- Inductors ,
- Power generation
- Index Terms
- Continuous Conduction Mode ,
- Continuous Conduction Mode Operation ,
- Single Phase ,
- Full-bridge Inverter ,
- Capacitance Values ,
- Voltage Source ,
- Switching Frequency ,
- Input Voltage ,
- Middle Point ,
- Switching States ,
- Input Current ,
- Low-frequency Fluctuations ,
- Inductance Value ,
- Dc-link Voltage ,
- Instantaneous Power ,
- Voltage Ripple ,
- Switching Period ,
- Mode Conversion ,
- Voltage Balancing ,
- Input Capacitance ,
- Voltage Source Inverter ,
- Capacitor Voltage Ripple ,
- High Ripple ,
- Lower Switching Losses ,
- Output Power ,
- Short-circuit
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Inverters ,
- Capacitors ,
- Topology ,
- Switches ,
- Equations ,
- Inductors ,
- Power generation
- Index Terms
- Continuous Conduction Mode ,
- Continuous Conduction Mode Operation ,
- Single Phase ,
- Full-bridge Inverter ,
- Capacitance Values ,
- Voltage Source ,
- Switching Frequency ,
- Input Voltage ,
- Middle Point ,
- Switching States ,
- Input Current ,
- Low-frequency Fluctuations ,
- Inductance Value ,
- Dc-link Voltage ,
- Instantaneous Power ,
- Voltage Ripple ,
- Switching Period ,
- Mode Conversion ,
- Voltage Balancing ,
- Input Capacitance ,
- Voltage Source Inverter ,
- Capacitor Voltage Ripple ,
- High Ripple ,
- Lower Switching Losses ,
- Output Power ,
- Short-circuit
- Author Keywords